Observations on Groundwater Level Change at Depths below 300 m in a Borehole Penetrating through the Futagawa Fault
Author:
Affiliation:
1. Graduate School of Engineering, Kyoto University
2. Chi-ken Sogo Consultants Co., Ltd.
Publisher
Japan Society of Engineering Geology
Subject
General Medicine
Link
https://www.jstage.jst.go.jp/article/jjseg/63/1/63_13/_pdf
Reference29 articles.
1. 1)Kagabu, M., Ide, K., Hosono, T., Nakagawa, K. and Shimada, J. (2020): Describing coseismic groundwater level rise using tank model in volcanic aquifers, Kumamoto, southern Japan, Journal of Hydrology, Vol. 582, 124464, https://doi.org/10.1016/j.jhydrol.2019.124464.
2. 2)市川 勉(1998):熊本地域における降雨と地下水位,湧水の関係について(Ⅰ)―湧水量と地下水位―,水利科学,Vol. 41,No. 6,pp. 1–17,https://doi.org/10.20820/suirikagaku.41.6_1.
3. 3)市川 勉(1999):熊本地域における降雨と地下水位,湧水の関係について(Ⅱ)―蒸発,水田涵養を考慮した降雨,地下水位と湧水の関係―,水利科学,Vol. 43, No. 4,pp. 67–87,https://doi.org/10.20820/suirikagaku.43.4_67.
4. 4)Kawagoshi, Y., Suenaga, Y., Chi, N. L., Hama, T., Ito, H. and Duc, L. V. (2019): Understanding nitrate contamination based on the relationship between changes in groundwater levels and changes in water quality with precipitation fluctuations, Science of the Total Environment, Vol. 657, pp. 146–153, https://doi.org/10.1016/j.scitotenv.2018.12.041.
5. 5)Hosono, T., Hossain, S. and Shimada, J. (2020): Hydrobiogeochemical evolution along the regional groundwater flow systems in volcanic aquifers in Kumamoto, Japan, Environmental Earth Sciences, Vol. 79, No. 410, https://doi.org/10.1007/s12665-020-09155-4.
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